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用于增强碱性介质中析氢反应质量活性的顺序电化置换介导的钯掺杂空心钌-碲纳米棒

Sequential galvanic replacement mediated Pd-doped hollow Ru-Te nanorods for enhanced hydrogen evolution reaction mass activity in alkaline media.

作者信息

Ahn Hojung, Cho Sanghyuk, Park Jung Tae, Jang Hongje

机构信息

Department of Chemistry, Kwangwoon University, 20 Gwangwoon-ro, Nowon-gu, Seoul 01897, Republic of Korea.

Department of Chemical Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, Republic of Korea.

出版信息

Nanoscale. 2022 Oct 21;14(40):14913-14920. doi: 10.1039/d2nr04285a.

Abstract

High catalytic activity, long-term stability, and economical Pt-free catalysts for the hydrogen evolution reaction (HER) are required for the conversion of renewable energy systems. Noble nanomaterial Pt is a superior electrolysis catalyst for water splitting under typical experimental conditions with a relatively low overpotential. However, the use of Pt is limited by its high cost and activity degradation over time. Among several prospective alternatives, Ru has emerged as a promising alkaline electrolysis catalyst because of its significant catalytic activity and reduced cost compared to Pt. We designed and suggested Pd-doped hollow Ru-Te nanorods (PdRuTeNRs) successive galvanic replacement reactions of sacrificial Te nanotemplates to further boost efficiency. The Pd/partially oxidized RuO/Ru/Te hetero-interfaced composition exhibited an HER mass activity of 11.3 A g Ru, twice that of Pt. In addition, the present PdRuTeNRs sufficiently maintained the activity from the 2000-cycle continuous test, greatly reducing the required cost by a quarter.

摘要

可再生能源系统的转换需要用于析氢反应(HER)的具有高催化活性、长期稳定性且经济的无铂催化剂。贵金属纳米材料铂在典型实验条件下是一种优越的水分解电解催化剂,过电位相对较低。然而,铂的使用受到其高成本和活性随时间降解的限制。在几种潜在的替代材料中,钌因其显著的催化活性和与铂相比降低的成本,已成为一种有前景的碱性电解催化剂。我们通过牺牲碲纳米模板的连续电化学生成置换反应设计并提出了钯掺杂的中空钌 - 碲纳米棒(PdRuTeNRs),以进一步提高效率。Pd/部分氧化的RuO/Ru/Te异质界面组成表现出11.3 A g Ru的析氢质量活性,是铂的两倍。此外,当前的PdRuTeNRs在2000次循环连续测试中充分保持了活性,将所需成本大幅降低了四分之一。

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